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Some factors governing Ag+ and Cu+ low coordination in chalcogenide environments

机译:硫族化物环境中控制Ag +和Cu +低配位的一些因素

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The factors influencing the low coordination of Cu+ and Ag+ d(10) cations in chalcogenides are analyzed by means of FLAPW band structure calculations. The study shows that the metal sid orbital mixing is the predominant factor, in agreement with most previous research reports. It also quantitatively shows that the d(10) cation polarization is reduced when the chalcogen electronegativity decreases, thus the coordination increases when going from the oxides to the tellurides. The calculation results make clear the fact that the d(10) element low coordination can be raised for a given chalcogen by enhancing the polarization influence of the chalcogen through a charge transfer from an alkali metal. Finally, the shift in behavior from Cu+ to Ag+ is shown to be related to their different polarizabilities. (C) 2001 Academic Press. [References: 30]
机译:通过FLAPW能带结构计算分析了硫族化物中Cu +和Ag + d(10)阳离子低配位的影响因素。研究表明,与先前的大多数研究报告一致,金属sid的轨道混合是主要因素。它也定量地表明,硫族元素的电负性降低时,d(10)阳离子极化降低,因此,当从氧化物到碲化物时,配位增加。计算结果清楚地表明,可以通过给定硫族元素通过从碱金属进行电荷转移来增强硫族元素的极化影响来提高d(10)元素的低配位性。最后,从Cu +到Ag +的行为变化显示出与它们不同的极化率有关。 (C)2001学术出版社。 [参考:30]

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